Michael F. Thorpe, D. Phil.
|Physics||Arizona State University, Tempe, AZ, United States|
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|Seyler SL, Kumar A, Thorpe MF, et al. (2015) Path Similarity Analysis: A Method for Quantifying Macromolecular Pathways. Plos Computational Biology. 11: e1004568|
|Kumar A, Campitelli P, Thorpe MF, et al. (2015) Partial Unfoldingand Refolding for Structure Refinement: A Unified Approach of Geometric Simulations and Molecular Dynamics. Proteins|
|Ellenbroek WG, Hagh VF, Kumar A, et al. (2015) Rigidity loss in disordered systems: three scenarios. Physical Review Letters. 114: 135501|
|Kumar A, Sherrington D, Wilson M, et al. (2014) Ring statistics of silica bilayers. Journal of Physics. Condensed Matter : An Institute of Physics Journal. 26: 395401|
|Thorpe MF, Stinchcombe RB. (2014) Two exactly soluble models of rigidity percolation Philosophical Transactions of the Royal Society a: Mathematical, Physical and Engineering Sciences. 372|
|Mott AJ, Thirumuruganandham SP, Thorpe MF, et al. (2013) Fast calculation of the infrared spectra of large biomolecules. European Biophysics Journal : Ebj. 42: 795-801|
|Corwin EI, Stinchcombe R, Thorpe MF. (2013) Bond percolation in higher dimensions Physical Review E - Statistical, Nonlinear, and Soft Matter Physics. 88|
|Wilson M, Kumar A, Sherrington D, et al. (2013) Modeling vitreous silica bilayers Physical Review B - Condensed Matter and Materials Physics. 87|
|Wright AC, Thorpe MF. (2013) Eighty years of random networks Physica Status Solidi (B) Basic Research. 250: 931-936|
|Spiriti J, Kamberaj H, de Graff AM, et al. (2012) DNA Bending through Large Angles Is Aided by Ionic Screening. Journal of Chemical Theory and Computation. 8: 2145-56|